ISG15
MDA5型
先天免疫系统
干扰素
生物
病毒学
冠状病毒
固有免疫
蛋白酵素
病毒
钻机-I
免疫系统
内部收益率3
细胞生物学
RNA病毒
基因
免疫学
RNA干扰
遗传学
核糖核酸
泛素
医学
2019年冠状病毒病(COVID-19)
疾病
传染病(医学专业)
病理
作者
Guanqun Liu,Jung-Hyun Lee,Zachary M. Parker,Dhiraj Acharya,Jessica J. Chiang,Michiel van Gent,William Riedl,Meredith E. Davis-Gardner,Effi Wies,Cindy Chiang,Michaela U. Gack
标识
DOI:10.1038/s41564-021-00884-1
摘要
Activation of the RIG-I-like receptors, retinoic-acid inducible gene I (RIG-I) and melanoma differentiation-associated protein 5 (MDA5), establishes an antiviral state by upregulating interferon (IFN)-stimulated genes (ISGs). Among these is ISG15, the mechanistic roles of which in innate immunity still remain enigmatic. In the present study, we report that ISG15 conjugation is essential for antiviral IFN responses mediated by the viral RNA sensor MDA5. ISGylation of the caspase activation and recruitment domains of MDA5 promotes its oligomerization and thereby triggers activation of innate immunity against a range of viruses, including coronaviruses, flaviviruses and picornaviruses. The ISG15-dependent activation of MDA5 is antagonized through direct de-ISGylation mediated by the papain-like protease of SARS-CoV-2, a recently emerged coronavirus that has caused the COVID-19 pandemic. Our work demonstrates a crucial role for ISG15 in the MDA5-mediated antiviral response, and also identifies a key immune evasion mechanism of SARS-CoV-2, which may be targeted for the development of new antivirals and vaccines to combat COVID-19.
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